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首页> 外文期刊>Biochemical and Biophysical Research Communications >Selection against glycosylation sites in potential target proteins of the general HMWC N-glycosyltransferase in haemophilus influenzae
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Selection against glycosylation sites in potential target proteins of the general HMWC N-glycosyltransferase in haemophilus influenzae

机译:在嗜血杆菌中,含有HMWC N-糖基转移酶的潜在靶蛋白中的糖基化位点的选择

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摘要

The HMWABC system of non-typeable Haemophilus influenzae (NTHi) encodes the HMWA adhesin glycoprotein, which is glycosylated by the HMWC glycosyltransferase. HMWC is a cytoplasmic N-glycosyltransferase, homologues of which are widespread in the Pasteurellaceae. We developed an assay for nonbiased detection of glycoproteins in NTHi based on metabolic engineering of the Leloir pathway and growth in media containing radiolabelled monosaccharides. The only glycoprotein identified in NTHi by this assay was HMWA. However, glycoproteomic analyses ex vivo in Escherichia coli showed that HMWC of NTHi was a general glycosyltransferase capable of glycosylating selected asparagines in proteins other than its HMWA substrate, including Asn78 in E. coli 30S ribosomal protein S5. The equivalent residue in S5 homologues in H. influenzae or other sequenced Pasteurellaceae genomes is not asparagine, and these organisms also showed significantly fewer than expected potential sites of glycosylation in general. Expression of active HMWC in E. coli resulted in growth inhibition compared with expression of inactive enzyme, consistent with glycosylation by HMWC detrimentally affecting the function of some E. coli proteins. Together, this supports the presence of a selective pressure in the Pasteurellaceae against glycosylation sites that would be modified by the general N-glycosyltransferase activity of HMWC.
机译:非易形血液植物甲型(NTHI)的HMWABC系统编码了HMWA粘附蛋白糖蛋白,其由HMWC糖基转移酶糖基化。 HMWC是一种细胞质N-糖基转移酶,其同源物在脊椎膜中普及。我们基于Leloir途径的代谢工程和含有放射性标记单糖的培养基生长的基于LELOIR途径和生长,我们开发了NTHI中的糖蛋白的非偏见检测的测定。该测定中唯一鉴定的糖蛋白是HMWA。然而,糖蛋白酶分析在大肠杆菌中的前体内显示,NTHI的HMWC是能够糖基化学化的糖基三烷基化合物,其在其HMWA底物以外的蛋白质中的选定氨基酰胺,包括大肠杆菌30S核糖体蛋白S5中的ASN78。在H.Compenzae或其他测序的巴氏菌基因组中的S5同源物中的等效残留物不是天冬酰胺,并且这些生物也显示出明显少于预期的糖基化潜在位点。与无活性酶的表达相比,活性HMWC在大肠杆菌中的表达导致生长抑制,与HMWC不利影响一些大肠杆菌蛋白的功能,与糖基化一致。在一起,这支持在糖基结构中存在对糖基化位点的选取压力,该糖基化位点将通过HMWC的一般N-糖基转移酶活性改性。

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  • 作者单位

    Australian Infectious Disease Research Centre School of Chemistry and Molecular Biosciences The;

    Australian Infectious Disease Research Centre School of Chemistry and Molecular Biosciences The;

    Australian Infectious Disease Research Centre School of Chemistry and Molecular Biosciences The;

    Australian Infectious Disease Research Centre School of Chemistry and Molecular Biosciences The;

    Australian Infectious Disease Research Centre School of Chemistry and Molecular Biosciences The;

    Australian Infectious Disease Research Centre School of Chemistry and Molecular Biosciences The;

    Australian Infectious Disease Research Centre School of Chemistry and Molecular Biosciences The;

    Institute for Glycomics Griffith University Gold Coast Campus Gold Coast QLD 4222 Australia;

    Australian Infectious Disease Research Centre School of Chemistry and Molecular Biosciences The;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

    Glycobiology; Leloir pathway; Mass spectrometry; Metabolic engineering; Protein evolution; Proteomics;

    机译:糖血管学;Leloir途径;质谱;代谢工程;蛋白质演化;蛋白质组学;

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